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Depression-Associated Gene Negr1-Fgfr2 Pathway Is Altered by Antidepressant Treatment

The Negr1 gene has been significantly associated with major depression in genetic studies. Negr1 encodes for a cell adhesion molecule cleaved by the protease Adam10, thus activating Fgfr2 and promoting neuronal spine plasticity. We investigated whether antidepressants modulate the expression of gene...

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Autores principales: Carboni, Lucia, Pischedda, Francesca, Piccoli, Giovanni, Lauria, Mario, Musazzi, Laura, Popoli, Maurizio, Mathé, Aleksander A., Domenici, Enrico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464991/
https://www.ncbi.nlm.nih.gov/pubmed/32751911
http://dx.doi.org/10.3390/cells9081818
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author Carboni, Lucia
Pischedda, Francesca
Piccoli, Giovanni
Lauria, Mario
Musazzi, Laura
Popoli, Maurizio
Mathé, Aleksander A.
Domenici, Enrico
author_facet Carboni, Lucia
Pischedda, Francesca
Piccoli, Giovanni
Lauria, Mario
Musazzi, Laura
Popoli, Maurizio
Mathé, Aleksander A.
Domenici, Enrico
author_sort Carboni, Lucia
collection PubMed
description The Negr1 gene has been significantly associated with major depression in genetic studies. Negr1 encodes for a cell adhesion molecule cleaved by the protease Adam10, thus activating Fgfr2 and promoting neuronal spine plasticity. We investigated whether antidepressants modulate the expression of genes belonging to Negr1-Fgfr2 pathway in Flinders sensitive line (FSL) rats, in a corticosterone-treated mouse model of depression, and in mouse primary neurons. Negr1 and Adam10 were the genes mostly affected by antidepressant treatment, and in opposite directions. Negr1 was down-regulated by escitalopram in the hypothalamus of FSL rats, by fluoxetine in the hippocampal dentate gyrus of corticosterone-treated mice, and by nortriptyline in hippocampal primary neurons. Adam10 mRNA was increased by nortriptyline administration in the hypothalamus, by escitalopram in the hippocampus of FSL rats, and by fluoxetine in mouse dorsal dentate gyrus. Similarly, nortriptyline increased Adam10 expression in hippocampal cultures. Fgfr2 expression was increased by nortriptyline in the hypothalamus of FSL rats and in hippocampal neurons. Lsamp, another IgLON family protein, increased in mouse dentate gyrus after fluoxetine treatment. These findings suggest that Negr1-Fgfr2 pathway plays a role in the modulation of synaptic plasticity induced by antidepressant treatment to promote therapeutic efficacy by rearranging connectivity in corticolimbic circuits impaired in depression.
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spelling pubmed-74649912020-09-04 Depression-Associated Gene Negr1-Fgfr2 Pathway Is Altered by Antidepressant Treatment Carboni, Lucia Pischedda, Francesca Piccoli, Giovanni Lauria, Mario Musazzi, Laura Popoli, Maurizio Mathé, Aleksander A. Domenici, Enrico Cells Article The Negr1 gene has been significantly associated with major depression in genetic studies. Negr1 encodes for a cell adhesion molecule cleaved by the protease Adam10, thus activating Fgfr2 and promoting neuronal spine plasticity. We investigated whether antidepressants modulate the expression of genes belonging to Negr1-Fgfr2 pathway in Flinders sensitive line (FSL) rats, in a corticosterone-treated mouse model of depression, and in mouse primary neurons. Negr1 and Adam10 were the genes mostly affected by antidepressant treatment, and in opposite directions. Negr1 was down-regulated by escitalopram in the hypothalamus of FSL rats, by fluoxetine in the hippocampal dentate gyrus of corticosterone-treated mice, and by nortriptyline in hippocampal primary neurons. Adam10 mRNA was increased by nortriptyline administration in the hypothalamus, by escitalopram in the hippocampus of FSL rats, and by fluoxetine in mouse dorsal dentate gyrus. Similarly, nortriptyline increased Adam10 expression in hippocampal cultures. Fgfr2 expression was increased by nortriptyline in the hypothalamus of FSL rats and in hippocampal neurons. Lsamp, another IgLON family protein, increased in mouse dentate gyrus after fluoxetine treatment. These findings suggest that Negr1-Fgfr2 pathway plays a role in the modulation of synaptic plasticity induced by antidepressant treatment to promote therapeutic efficacy by rearranging connectivity in corticolimbic circuits impaired in depression. MDPI 2020-07-31 /pmc/articles/PMC7464991/ /pubmed/32751911 http://dx.doi.org/10.3390/cells9081818 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Carboni, Lucia
Pischedda, Francesca
Piccoli, Giovanni
Lauria, Mario
Musazzi, Laura
Popoli, Maurizio
Mathé, Aleksander A.
Domenici, Enrico
Depression-Associated Gene Negr1-Fgfr2 Pathway Is Altered by Antidepressant Treatment
title Depression-Associated Gene Negr1-Fgfr2 Pathway Is Altered by Antidepressant Treatment
title_full Depression-Associated Gene Negr1-Fgfr2 Pathway Is Altered by Antidepressant Treatment
title_fullStr Depression-Associated Gene Negr1-Fgfr2 Pathway Is Altered by Antidepressant Treatment
title_full_unstemmed Depression-Associated Gene Negr1-Fgfr2 Pathway Is Altered by Antidepressant Treatment
title_short Depression-Associated Gene Negr1-Fgfr2 Pathway Is Altered by Antidepressant Treatment
title_sort depression-associated gene negr1-fgfr2 pathway is altered by antidepressant treatment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464991/
https://www.ncbi.nlm.nih.gov/pubmed/32751911
http://dx.doi.org/10.3390/cells9081818
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